High-efficiency blue and white electroluminescent devices based on non-Cd I - III - VI quantum dots

  • Yoon, Suk-Young
  • Kim, Jong-Hoon
  • Kim, Kyung-Hye
  • Han, Chang-Yeol
  • Jo, Jung-Ho
  • ... Yang, Heesun
  • 외 4명
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초록

Research direction of colloidal quantum dot (QD)-based LEDs (QLEDs), whose performance has substantially progressed over last two decades, has been oriented mostly to the fabrication of next-generation, high-color gamut display devices particularly based on Cd-containing QDs, while their extension to solid-state planar lighting application remains nearly unexplored. In this work, we report on all-solution-processed fabrication of group I-III-VI chalcogenide, non-Cd QDs-based high-efficiency white lighting electroluminescent (EL) devices. For this, using Zn-Cu-Ga-S (ZCGS) QD emitters having a high photoluminescence quantum yield (PL QY) of 80% a multilayered blue QLED consisting of poly(9-vinylcarbazole) hole transport layer (HTL) and Mg-alloyed ZnO nanoparticle electron transport layer (ETL) is first fabricated, showing a maximum external quantum efficiency (EQE) of 7.1%. Then, white QLEDs containing a mixture of blue ZCGS and yellow Cu-In-S QDs as a single emitting layer (EML) are constructed with the same HTL/ETL combination as above. White EL spectral distribution is facilely tunable simply by varying ZCGS-to-CIS QD content ratio in the EML of white EL device. The optimum white QLED not only generates the peak quantities of 2172 cd/m(2) in luminance and 4.6% in EQE, corresponding to the record values ever reported in non-Cd white EL devices, but exhibits high color rendering index up to 82.

키워드

Non-Cd quantum dotsWhite electroluminescenceBicoloredHigh-efficiencyLIGHT-EMITTING-DIODESFULL-COLORPERFORMANCE
제목
High-efficiency blue and white electroluminescent devices based on non-Cd I - III - VI quantum dots
저자
Yoon, Suk-YoungKim, Jong-HoonKim, Kyung-HyeHan, Chang-YeolJo, Jung-HoJo, Dae-YeonHong, SeungkiHwang, Jun YeonDo, Young RagYang, Heesun
DOI
10.1016/j.nanoen.2019.103869
발행일
2019-09
유형
Article
저널명
Nano Energy
63